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硅和碳修饰的硅纳米片对原代人免疫细胞的影响。

Silica and carbon decorated silica nanosheet impact on primary human immune cells.

机构信息

Functional Materials, Department of Applied Physics, The Royal Institute of Technology, School of Engineering Sciences, Isafjordsgatan 22, SE-164 40 Kista Stockholm, Sweden.

University of Sassari, Sassari, 07100, Italy.

出版信息

Colloids Surf B Biointerfaces. 2018 Dec 1;172:779-789. doi: 10.1016/j.colsurfb.2018.09.022. Epub 2018 Sep 12.

Abstract

Silica nanosheets (SiO NS) are considered to be a promising material in clinical practice for diagnosis and therapy applications. However, an appropriate surface functionalization is essential to guarantee high biocompatibility and molecule loading ability. Although SiO NS are chemically stable, its effects on immune systems are still being explored. In this work, we successfully synthesized a novel 2D multilayer SiO NS and SiO NS coated with carbon (C/SiO NS), and evaluated their impact on human Peripheral Blood Mononuclear Cells (PBMCs) and some immune cell subpopulations. We demonstrated that the immune response is strongly dependent on the surface functionalities of the SiO NS. Ex vivo experiments showed an increase in biocompatibility of C/SiO NS compared to SiO NS, resulting in a lowering of hemoglobin release together with a reduction in cellular toxicity and cellular activation. However, none of them are directly involved in the activation of the acute inflammation process with a consequent release of pro-inflammatory cytokines. The obtained results provide an important direction towards the biomedical applications of silica nanosheets, rendering them an attractive material for the development of future immunological therapies.

摘要

硅纳米片(SiO NS)被认为是一种很有前途的材料,可应用于临床诊断和治疗。然而,为了保证其具有高生物相容性和分子负载能力,合适的表面功能化是必不可少的。尽管 SiO NS 具有化学稳定性,但它对免疫系统的影响仍在探索之中。在这项工作中,我们成功合成了一种新型的 2D 多层 SiO NS 和碳包覆的 SiO NS(C/SiO NS),并评估了它们对人外周血单核细胞(PBMCs)和一些免疫细胞亚群的影响。我们证明了免疫反应强烈依赖于 SiO NS 的表面功能。与 SiO NS 相比,体外实验表明 C/SiO NS 的生物相容性提高,导致血红蛋白释放减少,同时细胞毒性和细胞活化降低。然而,它们都没有直接参与激活急性炎症过程,从而导致促炎细胞因子的释放。所得结果为硅纳米片在生物医学中的应用提供了一个重要的方向,使它们成为开发未来免疫疗法的有吸引力的材料。

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